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1.
Ann Neurol ; 76(3): 443-56, 2014 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-25042160

RESUMO

OBJECTIVE: Reducing levels of the microtubule-associated protein tau has shown promise as a potential treatment strategy for diseases with secondary epileptic features such as Alzheimer disease. We wanted to determine whether tau reduction may also be of benefit in intractable genetic epilepsies. METHODS: We studied a mouse model of Dravet syndrome, a severe childhood epilepsy caused by mutations in the human SCN1A gene encoding the voltage-gated sodium channel subunit Nav 1.1. We genetically deleted 1 or 2 Tau alleles in mice carrying an Nav 1.1 truncation mutation (R1407X) that causes Dravet syndrome in humans, and examined their survival, epileptic activity, related hippocampal alterations, and behavioral abnormalities using observation, electroencephalographic recordings, acute slice electrophysiology, immunohistochemistry, and behavioral assays. RESULTS: Tau ablation prevented the high mortality of Dravet mice and reduced the frequency of spontaneous and febrile seizures. It reduced interictal epileptic spikes in vivo and drug-induced epileptic activity in brain slices ex vivo. Tau ablation also prevented biochemical changes in the hippocampus indicative of epileptic activity and ameliorated abnormalities in learning and memory, nest building, and open field behaviors in Dravet mice. Deletion of only 1 Tau allele was sufficient to suppress epileptic activity and improve survival and nesting performance. INTERPRETATION: Tau reduction may be of therapeutic benefit in Dravet syndrome and other intractable genetic epilepsies.


Assuntos
Epilepsias Mioclônicas/metabolismo , Hipocampo/metabolismo , Convulsões/metabolismo , Proteínas tau/metabolismo , Alelos , Animais , Comportamento Animal/fisiologia , Modelos Animais de Doenças , Eletroencefalografia , Epilepsias Mioclônicas/fisiopatologia , Epilepsias Mioclônicas/terapia , Feminino , Hipocampo/patologia , Hipocampo/fisiopatologia , Aprendizagem/fisiologia , Masculino , Camundongos , Camundongos Endogâmicos C3H , Camundongos Endogâmicos C57BL , Camundongos Knockout , Mutação/genética , Canal de Sódio Disparado por Voltagem NAV1.1/genética , Convulsões/etiologia , Convulsões/fisiopatologia , Proteínas tau/genética
2.
Am J Pathol ; 171(6): 1966-77, 2007 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-18055553

RESUMO

Integrin-linked kinase (Ilk) is a serine/threonine kinase and an adaptor protein that links integrins to the actin cytoskeleton and to a number of signaling pathways involved in integrin action. We hypothesized that Ilk may act as an important effector of integrins in skeletal muscle, where these receptors provide a critical link between the sarcolemma and the extracellular matrix. Using the cre/lox system, we deleted Ilk from skeletal muscles of mice. The resulting mutants developed a progressive muscular dystrophy with multiple degenerating and regenerating muscle fibers, increased central nuclei, and endomysial fibrosis. These defects were widespread but were most severe near myofascial junctions where Ilk mutants showed displacement of focal adhesion-related proteins, including vinculin, paxillin, focal adhesion kinase, dystrophin, and the alpha 7 beta 1D-integrin subunits. Distal ends of mutant muscle fibers appeared irregular, and there was restructuring of the actin cytoskeleton. These findings resemble those seen in humans and mice lacking the alpha 7-integrin subunit and suggest that Ilk may act as a cytoplasmic effector of alpha 7 beta1-integrin in the pathogenesis of these deficiencies.


Assuntos
Integrinas/deficiência , Músculo Esquelético/enzimologia , Músculo Esquelético/patologia , Distrofias Musculares/genética , Distrofias Musculares/patologia , Proteínas Serina-Treonina Quinases/fisiologia , Animais , Adesões Focais , Camundongos , Camundongos Knockout , Músculo Esquelético/fisiologia , Mutação , Proteínas Serina-Treonina Quinases/genética
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